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1.
Nat Neurosci ; 25(6): 688-701, 2022 06.
Article de Anglais | MEDLINE | ID: mdl-35654956

RÉSUMÉ

Autophagy is markedly impaired in Alzheimer's disease (AD). Here we reveal unique autophagy dysregulation within neurons in five AD mouse models in vivo and identify its basis using a neuron-specific transgenic mRFP-eGFP-LC3 probe of autophagy and pH, multiplex confocal imaging and correlative light electron microscopy. Autolysosome acidification declines in neurons well before extracellular amyloid deposition, associated with markedly lowered vATPase activity and build-up of Aß/APP-ßCTF selectively within enlarged de-acidified autolysosomes. In more compromised yet still intact neurons, profuse Aß-positive autophagic vacuoles (AVs) pack into large membrane blebs forming flower-like perikaryal rosettes. This unique pattern, termed PANTHOS (poisonous anthos (flower)), is also present in AD brains. Additional AVs coalesce into peri-nuclear networks of membrane tubules where fibrillar ß-amyloid accumulates intraluminally. Lysosomal membrane permeabilization, cathepsin release and lysosomal cell death ensue, accompanied by microglial invasion. Quantitative analyses confirm that individual neurons exhibiting PANTHOS are the principal source of senile plaques in amyloid precursor protein AD models.


Sujet(s)
Maladie d'Alzheimer , Maladie d'Alzheimer/métabolisme , Peptides bêta-amyloïdes/métabolisme , Précurseur de la protéine bêta-amyloïde/génétique , Précurseur de la protéine bêta-amyloïde/métabolisme , Animaux , Autophagie , Modèles animaux de maladie humaine , Concentration en ions d'hydrogène , Lysosomes/métabolisme , Souris , Souris transgéniques , Neurones/métabolisme , Plaque amyloïde/métabolisme
2.
Nat Med ; 20(12): 1485-92, 2014 Dec.
Article de Anglais | MEDLINE | ID: mdl-25384087

RÉSUMÉ

The dynamics of ß-amyloid deposition and related second-order physiological effects, such as regional cerebral blood flow (rCBF), are key factors for a deeper understanding of Alzheimer's disease (AD). We present longitudinal in vivo data on the dynamics of ß-amyloid deposition and the decline of rCBF in two different amyloid precursor protein (APP) transgenic mouse models of AD. Using a multiparametric positron emission tomography and magnetic resonance imaging approach, we demonstrate that in the presence of cerebral ß-amyloid angiopathy (CAA), ß-amyloid deposition is accompanied by a decline of rCBF. Loss of perfusion correlates with the growth of ß-amyloid plaque burden but is not related to the number of CAA-induced microhemorrhages. However, in a mouse model of parenchymal ß-amyloidosis and negligible CAA, rCBF is unchanged. Because synaptically driven spontaneous network activity is similar in both transgenic mouse strains, we conclude that the disease-related decline of rCBF is caused by CAA.


Sujet(s)
Peptides bêta-amyloïdes/métabolisme , Encéphale/anatomopathologie , Angiopathie amyloïde cérébrale/anatomopathologie , Hémorragie cérébrale/anatomopathologie , Circulation cérébrovasculaire , Plaque amyloïde/anatomopathologie , Précurseur de la protéine bêta-amyloïde/génétique , Dérivés de l'aniline , Animaux , Benzothiazoles , Encéphale/imagerie diagnostique , Encéphale/métabolisme , Angiopathie amyloïde cérébrale/imagerie diagnostique , Angiopathie amyloïde cérébrale/métabolisme , Hémorragie cérébrale/imagerie diagnostique , Modèles animaux de maladie humaine , Femelle , Études longitudinales , Imagerie par résonance magnétique , Souris , Souris transgéniques , Imagerie multimodale , Imagerie de perfusion , Plaque amyloïde/imagerie diagnostique , Plaque amyloïde/métabolisme , Tomographie par émission de positons , Radiopharmaceutiques , Thiazoles
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